On the drawing (attached , apply a datum feature symbols to create a datum axis A-B by using the right and left diameters. Apply a position coaxiality between the right and left diameter of 0.1 at MMC, and apply a position tolerance to the large center di
On the drawing (attached , apply a datum feature symbols to create a datum axis A-B by using the right and left diameters. Apply a position coaxiality between the right and left diameter of 0.1 at MMC, and apply a position tolerance to the large center di
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
On the drawing (attached , apply a datum feature symbols to create a datum axis A-B by using the right and left diameters.
Apply a position coaxiality between the right and left diameter of 0.1 at MMC, and apply a position tolerance to the large center diameter within a diameter of 0.3 in relation to the single datum axis established by both datum features A and B.

Transcribed Image Text:**Workshop Exercise 14.1: Technical Drawing Analysis**
This image displays a technical drawing of a cylindrical component with various diameters indicated. Below is the detailed explanation of the diagram:
1. **Front View (Leftmost View)**
- Shows a circle with crosshairs.
- The diameter of this section is indicated as Ø6.40/6.35, meaning the diameter can range between 6.35 and 6.40 units.
2. **Side View (Main Diagram)**
- The component appears to consist of three main cylindrical sections with varying diameters, all aligned along a central axis.
- Starting from the left:
- First section: Diameter is Ø6.40/6.35.
- Second and largest section in the middle: Diameter is Ø15.3/15.1.
- Third section on the right: Diameter is Ø9.55/9.50.
- Each section features clearly defined lines, indicating separate cylindrical parts or possibly sections with different machining specifications.
The tolerances indicated with each diameter denote the acceptable manufacturing limits for each section of the component. Understanding these detailed measurements is crucial for ensuring the component fits and functions correctly within a larger assembly.
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